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A recent study in rice and maize suggested that the majority of GBPs are involved in starch biosynthesis (Koziol et al. 2011).
More CGI shores were methylated than CGIs in maize suggested that DNA methylation level was not positively correlated with CpG density.
The high similarities of protein sequences, conserved domains and three-dimensional models among OsHATs and their homologs in Arabidopsis and maize suggested that OsHATs have multiple functions.
A comparison of the approach to a previous study that involved pooled sequencing F ST data from maize suggested that outlying windows were more clearly separated from their neighbors than when using a standard sliding window approach.
Transcriptional profiling analyses in rice, sorghum and maize suggested that some PIN genes from these plant species might mediate the crosstalk between auxin, other hormones and abiotic stresses [ 15– 17].
Clear haplotype structure was observed in IBS analysis for three of these putative inversions, and simple genetic-distance-based clustering, including Tripsacum and maize, suggested that the nonmaize haplotype was likely the derived state (supplementary fig. S5, Supplementary Material online).
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Several nucleotide polymorphisms in Rtcl, Rth3, Rum1, and Rul1 were significantly (P < 0.05) associated with seedling root traits in maize suggesting that all four tested genes are involved in the maize root development.
The success application of MARB in maize suggests that this technology is applicable to any hybrid crop to breed new inbreds with improved hybrid performance but the same heterotic mode.
However, recent studies [9], [14] have detected significant positive selection on wx in Chinese waxy maize, suggesting that strong improvement might have acted on the mutation genotype to maintain the glutinous phenotype.
However, recent results in maize suggest that this may not be the case [ 14].
Both sites appear to be polymorphic in maize, suggesting that these Helitrons have been active recently.
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